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The evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in Klebsiella spp

Antibiotic resistance is driven by selection, but the degree to which a bacterial strain’s evolutionary history shapes the mechanism and strength of resistance remains an open question. Here, we reconstruct the genetic and evolutionary mechanisms of carbapenem resistance in a clinical isolate of Kle...

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Autores principales: Rosas, Natalia C, Wilksch, Jonathan, Barber, Jake, Li, Jiahui, Wang, Yanan, Sun, Zhewei, Rocker, Andrea, Webb, Chaille T, Perlaza-Jiménez, Laura, Stubenrauch, Christopher J, Dhanasekaran, Vijaykrishna, Song, Jiangning, Taiaroa, George, Davies, Mark, Strugnell, Richard A, Bao, Qiyu, Zhou, Tieli, McDonald, Michael J, Lithgow, Trevor
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10325707/
https://www.ncbi.nlm.nih.gov/pubmed/37410078
http://dx.doi.org/10.7554/eLife.83107
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author Rosas, Natalia C
Wilksch, Jonathan
Barber, Jake
Li, Jiahui
Wang, Yanan
Sun, Zhewei
Rocker, Andrea
Webb, Chaille T
Perlaza-Jiménez, Laura
Stubenrauch, Christopher J
Dhanasekaran, Vijaykrishna
Song, Jiangning
Taiaroa, George
Davies, Mark
Strugnell, Richard A
Bao, Qiyu
Zhou, Tieli
McDonald, Michael J
Lithgow, Trevor
author_facet Rosas, Natalia C
Wilksch, Jonathan
Barber, Jake
Li, Jiahui
Wang, Yanan
Sun, Zhewei
Rocker, Andrea
Webb, Chaille T
Perlaza-Jiménez, Laura
Stubenrauch, Christopher J
Dhanasekaran, Vijaykrishna
Song, Jiangning
Taiaroa, George
Davies, Mark
Strugnell, Richard A
Bao, Qiyu
Zhou, Tieli
McDonald, Michael J
Lithgow, Trevor
author_sort Rosas, Natalia C
collection PubMed
description Antibiotic resistance is driven by selection, but the degree to which a bacterial strain’s evolutionary history shapes the mechanism and strength of resistance remains an open question. Here, we reconstruct the genetic and evolutionary mechanisms of carbapenem resistance in a clinical isolate of Klebsiella quasipneumoniae. A combination of short- and long-read sequencing, machine learning, and genetic and enzymatic analyses established that this carbapenem-resistant strain carries no carbapenemase-encoding genes. Genetic reconstruction of the resistance phenotype confirmed that two distinct genetic loci are necessary in order for the strain to acquire carbapenem resistance. Experimental evolution of the carbapenem-resistant strains in growth conditions without the antibiotic revealed that both loci confer a significant cost and are readily lost by de novo mutations resulting in the rapid evolution of a carbapenem-sensitive phenotype. To explain how carbapenem resistance evolves via multiple, low-fitness single-locus intermediates, we hypothesised that one of these loci had previously conferred adaptation to another antibiotic. Fitness assays in a range of drug concentrations show how selection in the antibiotic ceftazidime can select for one gene (bla(DHA-1)) potentiating the evolution of carbapenem resistance by a single mutation in a second gene (ompK36). These results show how a patient’s treatment history might shape the evolution of antibiotic resistance and could explain the genetic basis of carbapenem-resistance found in many enteric-pathogens.
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spelling pubmed-103257072023-07-07 The evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in Klebsiella spp Rosas, Natalia C Wilksch, Jonathan Barber, Jake Li, Jiahui Wang, Yanan Sun, Zhewei Rocker, Andrea Webb, Chaille T Perlaza-Jiménez, Laura Stubenrauch, Christopher J Dhanasekaran, Vijaykrishna Song, Jiangning Taiaroa, George Davies, Mark Strugnell, Richard A Bao, Qiyu Zhou, Tieli McDonald, Michael J Lithgow, Trevor eLife Evolutionary Biology Antibiotic resistance is driven by selection, but the degree to which a bacterial strain’s evolutionary history shapes the mechanism and strength of resistance remains an open question. Here, we reconstruct the genetic and evolutionary mechanisms of carbapenem resistance in a clinical isolate of Klebsiella quasipneumoniae. A combination of short- and long-read sequencing, machine learning, and genetic and enzymatic analyses established that this carbapenem-resistant strain carries no carbapenemase-encoding genes. Genetic reconstruction of the resistance phenotype confirmed that two distinct genetic loci are necessary in order for the strain to acquire carbapenem resistance. Experimental evolution of the carbapenem-resistant strains in growth conditions without the antibiotic revealed that both loci confer a significant cost and are readily lost by de novo mutations resulting in the rapid evolution of a carbapenem-sensitive phenotype. To explain how carbapenem resistance evolves via multiple, low-fitness single-locus intermediates, we hypothesised that one of these loci had previously conferred adaptation to another antibiotic. Fitness assays in a range of drug concentrations show how selection in the antibiotic ceftazidime can select for one gene (bla(DHA-1)) potentiating the evolution of carbapenem resistance by a single mutation in a second gene (ompK36). These results show how a patient’s treatment history might shape the evolution of antibiotic resistance and could explain the genetic basis of carbapenem-resistance found in many enteric-pathogens. eLife Sciences Publications, Ltd 2023-07-06 /pmc/articles/PMC10325707/ /pubmed/37410078 http://dx.doi.org/10.7554/eLife.83107 Text en © 2023, Rosas, Wilksch, Barber et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Evolutionary Biology
Rosas, Natalia C
Wilksch, Jonathan
Barber, Jake
Li, Jiahui
Wang, Yanan
Sun, Zhewei
Rocker, Andrea
Webb, Chaille T
Perlaza-Jiménez, Laura
Stubenrauch, Christopher J
Dhanasekaran, Vijaykrishna
Song, Jiangning
Taiaroa, George
Davies, Mark
Strugnell, Richard A
Bao, Qiyu
Zhou, Tieli
McDonald, Michael J
Lithgow, Trevor
The evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in Klebsiella spp
title The evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in Klebsiella spp
title_full The evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in Klebsiella spp
title_fullStr The evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in Klebsiella spp
title_full_unstemmed The evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in Klebsiella spp
title_short The evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in Klebsiella spp
title_sort evolutionary mechanism of non-carbapenemase carbapenem-resistant phenotypes in klebsiella spp
topic Evolutionary Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10325707/
https://www.ncbi.nlm.nih.gov/pubmed/37410078
http://dx.doi.org/10.7554/eLife.83107
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